CN110414773A - Evaluation method, device and the storage medium of petroleum S&T benefit - Google Patents

Evaluation method, device and the storage medium of petroleum S&T benefit Download PDF

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Publication number
CN110414773A
CN110414773A CN201910497546.5A CN201910497546A CN110414773A CN 110414773 A CN110414773 A CN 110414773A CN 201910497546 A CN201910497546 A CN 201910497546A CN 110414773 A CN110414773 A CN 110414773A
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technical system
layer
divided
technology
factor
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辜穗
姜子昂
王径
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China Petroleum and Natural Gas Co Ltd
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China Petroleum and Natural Gas Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0639Performance analysis of employees; Performance analysis of enterprise or organisation operations
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/02Agriculture; Fishing; Mining

Abstract

This application discloses evaluation method, device and the storage mediums of a kind of petroleum S&T benefit, belong to oil gas technical field.The described method includes: obtaining objective appraisal object, the objective appraisal object is the oil gas operation unit for achieving economic benefit;According to the hierarchical structure of production total factor distribution principle and oil gas tangibility technology tree, the objective appraisal object is layered, multilayer technique system is obtained;By the progressive model that is divided into of benefit to the production factors progress technology evaluation in the multi-level techniques system, the progressive model that is divided into of the benefit is for determining the market value of evaluation object.The application is according to the hierarchical structure for producing total factor distribution principle and oil gas tangibility technology tree, objective appraisal object is layered, obtain multilayer technique system, then pass through the progressive market value for being divided into model and determining objective appraisal object of benefit, to complete the evaluation to objective appraisal object, evaluation accuracy is improved.

Description

Evaluation method, device and the storage medium of petroleum S&T benefit
Technical field
This application involves oil gas technical field, in particular to a kind of evaluation method, device and the storage of petroleum S&T benefit Medium.
Background technique
Science and technology evaluation is the important prerequisite implemented transformation of scientific and technical result wound effect, promote scientific research project management and talent's examination. Evaluation accordingly, with respect to petroleum S&T benefit is also got more and more attention.
Currently, being usually to pass through petroleum S&T benefit stripping method and the increasing of petroleum S&T benefit to the evaluation of petroleum S&T benefit Amount method carries out.Wherein, the operation evaluated by petroleum S&T benefit stripping method can be with are as follows: by producing to petroleum S&T achievement Raw benefit is successively removed, and the benefit contribution of monotechnics is finally obtained.It removes for the first time, using income present value method, from In the economic benefit that petroleum and petrochemical industry production project generates, the benefit of routine techniques and the benefit of innovative technology are separated;Second Removing separates integrated management element from by being removed in obtained innovative technology element for the first time according to the proportionate relationship of 3:7 Contribution and the contribution of technology essential factor benefit;Third time is removed, and is divided into method and equal point-score using technical pattern template, according to oil gas technology Tree structure, obtained technology essential factor contribution benefit will be removed for the second time using layer-by-layer removing to monotechnics.
But when due to being evaluated by petroleum S&T benefit stripping method or petroleum S&T benefit method of addition, first When secondary removing, forming element is inconsiderate complete, and when removing for second, management essentials and the removing of technology essential factor benefit are according to 3:7 Ratio setting it is excessively dogmatic, according to insufficient.Third time removing Shi Yijun point-score computing technique construction module is divided into coefficient, What the technology number for exactly including according to each profession was uniformed is divided into coefficient setting, is divided into as determining particular technique Important evidence ignores multilayer polarity, complexity and the otherness of oil gas technical system, does not account for huge oil gas technical system In, the function status of particular technique and Value Contribution difference under different majors process, different technologies level, different technologies sequence, So as to cause the assessment inaccuracy to oil gas technical benefits.
Summary of the invention
The embodiment of the present application provides evaluation method, device and the storage medium of a kind of petroleum S&T benefit, for solving In the related technology to the problem of the assessment inaccuracy of oil gas technical benefits.The technical solution is as follows:
On the one hand, a kind of evaluation method of petroleum S&T benefit is provided, which comprises
Objective appraisal object is obtained, the objective appraisal object is the oil gas operation unit for achieving economic benefit;
According to the hierarchical structure of production total factor distribution principle and oil gas tangibility technology tree, by the objective appraisal object It is layered, obtains multilayer technique system;
By the progressive model that is divided into of benefit to the production factors progress technology evaluation in the multi-level techniques system, the effect The progressive model that is divided into of benefit is for determining the market value of evaluation object.
In some embodiments, it is described by the progressive model that is divided into of benefit to the production factors in the multi-level techniques system Carry out technology evaluation, comprising:
Determine that the corresponding technology essential factor of every layer of technical system is divided into rate in the multilayer technique system;
It is divided into rate based on the technology essential factor, determines the corresponding market prospective total value of every layer of technical system.
In some embodiments, the corresponding technology essential factor point of every layer of technical system in the determination multilayer technique system At rate, comprising:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into Regulation coefficient;
The basic function of every layer of technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains every layer of skill The corresponding technology essential factor of art system is divided into rate.
In some embodiments, every layer of technical system is corresponding in the determining multilayer technique system is divided into Dynamic gene, Include:
For first layer technical system, it is strong to obtain the corresponding technical application item base income of the first layer technical system Spend the advanced of the factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology The property element superposed strength factor;
By the corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology at The advanced element superposed strength factor phase of this intensity factor, system engineering Technical investment cost intensity factor and overall science and technology Add, obtains that the first layer technical system is corresponding to be divided into Dynamic gene;
For n-th layer technical system, obtain the corresponding Technical investment of each technology essential factor in the n-th layer technical system at This intensity factor, engineering technology input cost intensity factor and the advanced element superposed strength factor, the N be more than or equal to 2 positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor It is added with the advanced element superposed strength factor, obtains in the n-th layer technical system that each technology essential factor is corresponding to be divided into tune Integral divisor.
In some embodiments, described to be divided into Dynamic gene based on every layer of technical system is corresponding, it determines described every Technical system is corresponding is divided into regulation coefficient for layer, comprising:
For first layer technical system, it is divided into Dynamic gene based on the first layer technical system is corresponding, by following First formula determines that the first layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KIIt is divided into regulation coefficient, the φ for the first layer technical system is correspondingIFor the first layer Technical system is corresponding to be divided into Dynamic gene, and the e is natural number.
In some embodiments, described to be divided into Dynamic gene based on every layer of technical system is corresponding, it determines described every Technical system is corresponding is divided into regulation coefficient for layer, comprising:
For n-th layer technical system, it is divided into Dynamic gene based on the n-th layer technical system is corresponding, passes through following Two formula determine that the n-th layer technical system is corresponding and are divided into regulation coefficient;
Wherein, the KNiIt is divided into regulation coefficient, the n for i-th of technology essential factor in the n-th layer technical system is corresponding Number for the technology essential factor for including in the n-th layer technical system, the i are any one skill in the n technology essential factor Art element, the φNiIt is divided into Dynamic gene for i-th of technology essential factor in the n-th layer technical system is corresponding, the e is certainly So number.
In some embodiments, described that rate is divided into based on the technology essential factor, determine that every layer of technical system is corresponding Market prospective total value, comprising:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of the first layer technical system, is led to It crosses following third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, the QIFor the corresponding market prospective total value of first layer technical system, the TzFor first layer technical system Corresponding technology essential factor is divided into rate, and the m is expected income years, and the z is any year in the prospective earnings time limit, The QIzFor the market prospective value that the first layer technical system is generated in z, the r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by described The corresponding technology essential factor of N layers of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
On the other hand, a kind of evaluating apparatus of petroleum S&T benefit is provided, described device includes:
Module is obtained, for obtaining objective appraisal object, the objective appraisal object is the oil gas for achieving economic benefit Operation unit;
Hierarchical block, for the hierarchical structure according to production total factor distribution principle and oil gas tangibility technology tree, by institute It states objective appraisal object to be layered, obtains multilayer technique system;
Evaluation module, for passing through the progressive model that is divided into of benefit to the production factors progress skill in the multi-level techniques system Art evaluation, the progressive model that is divided into of the benefit is for determining the market value of evaluation object.
In some embodiments, the evaluation module includes:
First determines submodule, for determining the corresponding technology essential factor point of every layer of technical system in the multilayer technique system At rate;
Second determines submodule, for being divided into rate based on the technology essential factor, determines that every layer of technical system is corresponding Market prospective total value.
In some embodiments, described first determine that submodule is used for:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into Regulation coefficient;
The basic function of every layer of technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains every layer of skill The corresponding technology essential factor of art system is divided into rate.
In some embodiments, described first determine that submodule is also used to:
For first layer technical system, it is strong to obtain the corresponding technical application item base income of the first layer technical system Spend the advanced of the factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology The property element superposed strength factor;
By the corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology at The advanced element superposed strength factor phase of this intensity factor, system engineering Technical investment cost intensity factor and overall science and technology Add, obtains that the first layer technical system is corresponding to be divided into Dynamic gene;
For n-th layer technical system, obtain the corresponding Technical investment of each technology essential factor in the n-th layer technical system at This intensity factor, engineering technology input cost intensity factor and the advanced element superposed strength factor, the N be more than or equal to 2 positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor It is added with the advanced element superposed strength factor, obtains in the n-th layer technical system that each technology essential factor is corresponding to be divided into tune Integral divisor.
In some embodiments, described first determine that submodule is also used to:
For first layer technical system, it is divided into Dynamic gene based on the first layer technical system is corresponding, by following First formula determines that the first layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KIIt is divided into regulation coefficient, the φ for the first layer technical system is correspondingIFor the first layer Technical system is corresponding to be divided into Dynamic gene, and the e is natural number.
In some embodiments, described first determine that submodule is also used to:
For n-th layer technical system, it is divided into Dynamic gene based on the n-th layer technical system is corresponding, passes through following Two formula determine that the n-th layer technical system is corresponding and are divided into regulation coefficient;
Wherein, the KNiIt is divided into regulation coefficient, the n for i-th of technology essential factor in the n-th layer technical system is corresponding Number for the technology essential factor for including in the n-th layer technical system, the i are any one skill in the n technology essential factor Art element, the φNiIt is divided into Dynamic gene for i-th of technology essential factor in the n-th layer technical system is corresponding, the e is certainly So number.
In some embodiments, described second determine that submodule is used for:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of the first layer technical system, is led to It crosses following third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, the QIFor the corresponding market prospective total value of first layer technical system, the TzFor first layer technical system Corresponding technology essential factor is divided into rate, and the m is expected income years, and the z is any year in the prospective earnings time limit, The QIzFor the market prospective value that the first layer technical system is generated in z, the r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by described The corresponding technology essential factor of N layers of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
On the other hand, a kind of computer readable storage medium is provided, is stored with computer program in the storage medium, The computer program realizes a kind of evaluation of petroleum S&T benefit of above-mentioned offer method when being executed by processor.
On the other hand, a kind of terminal is provided, the terminal includes:
Processor;
Memory for storage processor executable instruction;
Wherein, the processor is configured to the step of executing a kind of evaluation method of above-mentioned petroleum S&T benefit.
On the other hand, a kind of computer program product comprising instruction is provided, when run on a computer, so that Computer executes a kind of the step of evaluation method of above-mentioned petroleum S&T benefit.
Technical solution bring beneficial effect provided by the embodiments of the present application includes at least:
It in the embodiment of the present application, can be according to the level knot of production total factor distribution principle and oil gas tangibility technology tree Objective appraisal object is layered by structure, obtains multilayer technique system, then determines that target is commented by the progressive model that is divided into of benefit The market value of valence object, to complete the evaluation to objective appraisal object.It, can be by objective appraisal due in the embodiment of the present application Object is layered according to production total factor distribution principle and the hierarchical structure of oil gas tangibility technology tree, and according to layering after Technical system is evaluated, and scientific and technological benefit is over-evaluated so as to improve existing petroleum S&T Benefit Evaluation Method, input in science and technology Underestimate, key special subjects project contribution extension, the generalization of technological value characteristic index, parameter extraction subjectivity, weight setting The typical problems such as one change, improve evaluation accuracy.
Detailed description of the invention
In order to more clearly explain the technical solutions in the embodiments of the present application, make required in being described below to embodiment Attached drawing is briefly described, it should be apparent that, the drawings in the following description are only some examples of the present application, for For those of ordinary skill in the art, without creative efforts, it can also be obtained according to these attached drawings other Attached drawing.
Fig. 1 is a kind of evaluation method flow chart for petroleum S&T benefit that one exemplary embodiment of the application provides;
Fig. 2 is the evaluation method flow chart for another petroleum S&T benefit that the application another exemplary embodiment provides;
Fig. 3 is a kind of division schematic diagram for multilayer technique system that one exemplary embodiment of the application provides;
Fig. 4 is a kind of evaluating apparatus structural schematic diagram for petroleum S&T benefit that one exemplary embodiment of the application provides;
Fig. 5 is a kind of structural schematic diagram for evaluation module that one exemplary embodiment of the application provides;
Fig. 6 is a kind of structural schematic diagram for terminal that one exemplary embodiment of the application provides.
Specific embodiment
To keep the purposes, technical schemes and advantages of the application clearer, below in conjunction with attached drawing to the application embodiment party Formula is described in further detail.
Before carrying out detailed explanation to the embodiment of the present application, the first application to being related in the embodiment of the present application Scene is explained.
Currently, in order to embody the scientific and technological benefit of oil gas technology, it usually needs petroleum S&T benefit is evaluated, and to oil The evaluation of gas science and technology benefit is usually to pass through petroleum S&T benefit stripping method and the progress of petroleum S&T benefit method of addition.Wherein, lead to Crossing operation that petroleum S&T benefit stripping method is evaluated can be with are as follows: is carried out by the benefit generated to petroleum S&T achievement layer-by-layer Removing finally obtains the benefit contribution of monotechnics.It removes for the first time, using income present value method, from petroleum and petrochemical industry production project In the economic benefit of generation, the benefit of routine techniques and the benefit of innovative technology are separated;Second of removing, according to the ratio of 3:7 Example relationship separates the contribution of integrated management element and technology essential factor effect from by removing for the first time in obtained innovative technology element Benefit contribution;Third time is removed, and is divided into method and equal point-score using technical pattern template, according to the tree structure of oil gas technology, by the Secondary obtained technology essential factor contribution benefit of removing is using layer-by-layer removing to monotechnics.But due to passing through petroleum S&T When benefit stripping method or petroleum S&T benefit method of addition are evaluated, when removing first time, forming element is inconsiderate complete, In When second of removing, management essentials and the removing of technology essential factor benefit are excessively dogmatic according to the ratio setting of 3:7, according to insufficient. Third time removing Shi Yijun point-score computing technique construction module is divided into coefficient, the technology number for exactly including according to each profession What is uniformed is divided into coefficient setting, as the important evidence that determining particular technique is divided into, ignores the more of oil gas technical system Layer polarity, complexity and otherness, do not account in huge oil gas technical system, different majors process, different technologies level, The function status of particular technique and Value Contribution difference under different technologies sequence, not so as to cause the assessment to oil gas technical benefits Accurately.
In addition, the operation evaluated by petroleum S&T benefit method of addition can be with are as follows: existed with key special subjects scientific and technological achievement Increment during fixed point block is subtracted using the increment output in the end of term is put into as the application generation of key special subjects scientific and technological achievement Increment benefit.But this method, when being evaluated, the economy with oil gas key special subjects scientific and technological achievement application block in the end of term is imitated Benefit is subtracted using initial economic benefit, is attributed to what key special subjects scientific and technological achievement was created for the institute generated during this is profitable Benefit contribution, does not account for during this, the value of the application of other relevant technical project achievements, conventional gas and oil technical application etc. Contribution that is to say the benefit contribution specific gravity for exaggerating key special subjects scientific and technological achievement, over-evaluate scientific and technological synergy output.Meanwhile with weight Two parameters of yield block increment investment and input in science and technology during big special project scientific and technological achievement application calculate increment input-occupancy-output analysis, It is always to put into carry out input cost calculating instead of production cost with input in science and technology in fact, underestimates scientific and technological synergy investment.
Based on such application scenarios, the embodiment of the present application provides a kind of petroleum S&T benefit for improving evaluation accuracy Evaluation method.
It, next will be in conjunction with attached drawing to the embodiment of the present application after the application scenarios to the embodiment of the present application are introduced The method of the evaluation of the petroleum S&T benefit of offer describes in detail.
Fig. 1 is a kind of flow chart of the evaluation method of petroleum S&T benefit provided by the embodiments of the present application, should referring to Fig. 1 Method is applied in terminal, includes the following steps.
Step 101: obtaining objective appraisal object, which is the oil gas job ticket for achieving economic benefit Member.
Step 102: according to the hierarchical structure of production total factor distribution principle and oil gas tangibility technology tree, which being commented Valence object is layered, and multilayer technique system is obtained.
Step 103: by the progressive model that is divided into of benefit to the production factors progress technology evaluation in the multi-level techniques system, The progressive model that is divided into of the benefit is for determining the market value of evaluation object.
It in the embodiment of the present application, can be according to the level knot of production total factor distribution principle and oil gas tangibility technology tree Objective appraisal object is layered by structure, obtains multilayer technique system, then determines that target is commented by the progressive model that is divided into of benefit The market value of valence object, to complete the evaluation to objective appraisal object.It, can be by objective appraisal due in the embodiment of the present application Object is layered according to production total factor distribution principle and the hierarchical structure of oil gas tangibility technology tree, and according to layering after Technical system is evaluated, and scientific and technological benefit is over-evaluated so as to improve existing petroleum S&T Benefit Evaluation Method, input in science and technology Underestimate, key special subjects project contribution extension, the generalization of technological value characteristic index, parameter extraction subjectivity, weight setting The typical problems such as one change, improve evaluation accuracy.
In some embodiments, by the progressive model that is divided into of benefit to the production factors progress skill in the multi-level techniques system Art evaluation, comprising:
Determine that the corresponding technology essential factor of every layer of technical system is divided into rate in the multilayer technique system;
It is divided into rate based on the technology essential factor, determines the corresponding market prospective total value of this every layer technical system.
In some embodiments, determine that the corresponding technology essential factor of every layer of technical system is divided into rate in the multilayer technique system, Include:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on this every layer technical system is corresponding, determines that this every layer technical system is corresponding and be divided into adjustment Coefficient;
The basic function of this every layer technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains this every layer technology body It is that corresponding technology essential factor is divided into rate.
In some embodiments, it determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene, comprising:
For first layer technical system, the corresponding technical application item base income intensity of the first layer technical system is obtained The advance of the factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology The element superposed strength factor;
By the corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology cost Intensity factor, system engineering Technical investment cost intensity factor are added with the advanced element superposed strength factor of overall science and technology, It obtains this first layer technical system is corresponding to be divided into Dynamic gene;
For n-th layer technical system, the corresponding Technical investment cost of each technology essential factor in the n-th layer technical system is obtained Intensity factor, engineering technology input cost intensity factor and the advanced element superposed strength factor, the N are more than or equal to 2 Positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor and The advanced element superposed strength factor is added, obtain each technology essential factor in the n-th layer technical system it is corresponding be divided into adjustment because Son.
In some embodiments, it is divided into Dynamic gene based on this every layer technical system is corresponding, determines this every layer technology body It is corresponding to be divided into regulation coefficient, comprising:
For first layer technical system, based on this, first layer technical system is corresponding is divided into Dynamic gene, passes through following One formula, which determines this first layer technical system is corresponding, is divided into regulation coefficient;
Wherein, KIIt is divided into regulation coefficient, φ for the first layer technical system is correspondingIIt is corresponding for the first layer technical system Be divided into Dynamic gene, e is natural number.
In some embodiments, it is divided into Dynamic gene based on this every layer technical system is corresponding, determines this every layer technology body It is corresponding to be divided into regulation coefficient, comprising:
For n-th layer technical system, based on this, n-th layer technical system is corresponding is divided into Dynamic gene, passes through following second Formula, which determines this n-th layer technical system is corresponding, is divided into regulation coefficient;
Wherein, KNiIt is divided into regulation coefficient for i-th of technology essential factor in the n-th layer technical system is corresponding, n is the n-th layer The number for the technology essential factor for including in technical system, i are any one technology essential factor in n technology essential factor, φNiFor the n-th layer I-th of technology essential factor is corresponding in technical system is divided into Dynamic gene, and e is natural number.
In some embodiments, rate is divided into based on the technology essential factor, determines the corresponding market prospective of this every layer technical system Total value, comprising:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of first layer technical system, under It states third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, QIFor the corresponding market prospective total value of first layer technical system, TzFor the corresponding skill of first layer technical system Art element is divided into rate, and m is expected income years, and z is any year in the prospective earnings time limit, QIzFor the first layer technology body The market prospective value of z generation is tied up to, r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by the n-th layer The corresponding technology essential factor of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
All the above alternatives, can form the alternative embodiment of the application according to any combination, and the application is real It applies example and this is no longer repeated one by one.
Fig. 2 is a kind of flow chart of the evaluation method of petroleum S&T benefit provided by the embodiments of the present application, referring to fig. 2, should Method includes the following steps.
Step 201: terminal obtains objective appraisal object, which is the oil gas operation for achieving economic benefit Unit.
It should be noted that terminal can obtain objective appraisal object from the relevant equipment of oil gas, when receiving user When the acquisition instruction triggered by specified operation, objective appraisal object can be obtained from the relevant equipment of oil gas.Alternatively, terminal User be can receive by the evaluation object of specified operation input, by user by specifying the evaluation object of operation input to be determined as Objective appraisal object.The specified operation can be clicking operation, slide, input operation, voice operating etc..
Step 202: terminal is according to the hierarchical structure for producing total factor distribution principle and oil gas tangibility technology tree, by the mesh Mark evaluation object is layered, and multilayer technique system is obtained.
Since the hierarchical structure of oil gas tangibility technology tree is at progressive relationship from top to bottom, terminal can be according to The hierarchical structure for producing total factor distribution principle and oil gas tangibility technology tree, which is layered, is obtained Multilayer technique system, and the technology essential factor in next stage technical system is corresponding to the technology essential factor in upper level technical system The next technology essential factor.
For either objective evaluation object, terminal can be according to production total factor distribution principle and oil gas tangibility technology tree Hierarchical structure, which is layered, 4 layers of technical system are obtained.Referring to Fig. 3, wherein first layer technology body The technology essential factor that system may include is capital, technology, management and labour;Second layer technical system may include geological prospecting skill Art is drilled well engineering technology, oil-gas reservoir engineering technology, christmas engineering technology, ground surface works technology, conveying storaging and transport technology and city Field marketing technique etc., which is drilled well engineering technology, oil-gas reservoir engineering technology, christmas engineering technology, ground Engineering technology, conveying storaging and transport technology and marketing technology etc. can be right for the technology essential factor technology in first layer technical system The next technology essential factor answered;May include in third layer technical system geological syntheses technology series, earthquake complex art series and It logs well complex art series, geological syntheses technology series, earthquake complex art series and well logging complex art series can be the The next technology essential factor corresponding to this technology essential factor of exploration engineering in two layers of technical system;4th layer of technical system may include A technology, B technology and C technology, A technology, B technology and C technology are complex art this serial skill in address in third layer technical system The corresponding the next technology essential factor of art element.
Step 203: terminal is by the progressive model that is divided into of benefit to the production factors progress technology in the multi-level techniques system Evaluation.
Since the value of petroleum S&T benefit can be assessed by the market value that it is generated, terminal can lead to The progressive model that is divided into of benefit is crossed to the production factors progress technology evaluation in the multi-level techniques system, the benefit is progressive to be divided into model For determining the market value of evaluation object.
As an example, terminal is by the progressive model that is divided into of benefit to the production factors progress skill in multi-level techniques system The operation of art evaluation can be with are as follows: determines that the corresponding technology essential factor of every layer of technical system is divided into rate in multilayer technique system;Based on this Technology essential factor is divided into rate, determines the corresponding market prospective total value of every layer of technical system.
Due to be according to technology level partitioning technology system, in the multi-level techniques system production factors carry out The core of technology evaluation can be that the progressive technology essential factor for being divided into every level-one in model of benefit is divided into rate, and therefore, terminal needs Determine that the corresponding technology essential factor of every layer of technical system is divided into rate in multilayer technique system, is then based on the technology essential factor and is divided into rate, Determine the corresponding market prospective total value of every layer of technical system.
It is following that the corresponding technology essential factor of every layer of technical system in multilayer technique system, which is divided into the behaviour of rate, to be determined to terminal respectively Make and rate is divided into based on the technology essential factor, determines that the operation of the corresponding market prospective total value of every layer of technical system is illustrated.
Hereinafter, illustrating how terminal determines that the corresponding technology essential factor of every layer of technical system is divided into rate in multilayer technique system.
It should be noted that terminal determines that the corresponding technology essential factor of every layer of technical system is divided into rate in multilayer technique system Operation includes at least the following two kinds mode.
First way, terminal can be corresponding multiplied by M layers of technical system by the basic function value of M layers of technical system Be divided into regulation coefficient, obtain the corresponding technology essential factor of M layers of technical system and be divided into rate, M is the positive integer more than or equal to 1.
It should be noted that the basic function of M layers of technical system, which is worth and is divided into regulation coefficient, to be arranged in advance, than Such as, the basic function value of first layer technical system can be 0.25,0.24,0.3 etc., and first layer technical system is divided into tune Integral coefficient can be any value between 0 to 1, for example, 0.5,0.6 etc..
The second way, terminal can determine in multilayer technique system that every layer of technical system is corresponding and be divided into Dynamic gene; It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into regulation coefficient;By every layer The basic function of technical system, which is worth, is divided into regulation coefficient multiplied by corresponding, obtains the corresponding technology essential factor point of every layer of technical system At rate.
Since technology essential factor is divided into the size of rate mainly by technology self-condition, the economy situation of technology, technology The influence of the factors such as market-oriented prospect, the legal status of technology, technology transfer mode and the requirements for acceptance, and oil gas technology is wanted The key factor that element is divided into rate includes technical advance and effective contribution, the earning capacity of itself, input in science and technology cost specific gravity etc. Factor, therefore, terminal can determine in multilayer technique system that every layer of technical system is corresponding and be divided into Dynamic gene;According to every layer of skill Art system is corresponding to be divided into Dynamic gene, determines that the corresponding technology essential factor of every layer of technical system is divided into rate.
As an example, for first layer technical system, terminal determines every layer of technical system pair in multilayer technique system The operation for being divided into Dynamic gene answered can be with are as follows: obtains the corresponding technical application item base income intensity of first layer technical system The advance of the factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology The element superposed strength factor;By the corresponding technical application item base income intensity factor of first layer technical system, overall science and technology The advanced element superposed strength of input cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology because Son is added, and obtains that first layer technical system is corresponding to be divided into Dynamic gene;It that is to say, φIImItIyIg, φI It is divided into Dynamic gene, φ for first layer technical system is correspondingImFor the corresponding technical application item base of first layer technical system Income intensity factor, φItFor overall input in science and technology cost intensity factor, φIyFor system engineering Technical investment cost intensity because Son, φIgFor the advanced element superposed strength factor of overall science and technology.
It should be noted that the corresponding technical application item base income intensity factor of first layer technical system, overall section The advanced element superposed strength of skill input cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology Because of the technical and economic evaluation that can be Design Thinking of the terminal based on Management Accounting and effectively put into, pass through each feature vector index Parameter extraction be calculated.
It is following respectively to the corresponding technical application item of first layer technical system for the ease of the understanding to the embodiment of the present application Mesh basis income intensity factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and total The advanced element superposed strength factor of body science and technology is explained.
(1), technical application item base income intensity factor can be used to indicate that scientific and technological achievement is applied to oil & gas industry chain Basic income in production operation detailed programs.
(2), overall input in science and technology cost intensity factor can be used to indicate that scientific and technological total investment accounts for the specific gravity that project is always put into (specific gravity that technology accounts for technology series), that is to say, overall input in science and technology cost intensity factor can throw overall science and technology for terminal Enter cost to obtain divided by technical application project input cost.
(3), system engineering Technical investment cost intensity factor can be used to indicate that engineering technology (application project) Zhan Ke The specific gravity that skill is always put into.It that is to say, system engineering Technical investment cost intensity factor can throw system engineering technology for terminal Enter cost to obtain divided by overall input in science and technology cost.
(4), the advanced element superposed strength factor of overall science and technology can be used to indicate that technology essential factor in effective application Between advanced control in section, can be the advanced element accumulated value of overall science and technology, for example, advanced element may include special Benefit, proprietary technology, tangibility technology, know-how, and the technology etc. of the above progress prize in science and technology at the provincial and ministerial level is obtained, overall science and technology Advanced element accumulated value can be patent, proprietary technology, tangibility technology, know-how, and obtain it is at the provincial and ministerial level more than The accumulated value of the technology of the progress prize in science and technology etc..
It should be noted that the value range of the advanced element superposed strength factor of overall science and technology can be set in terminal, For example, the advanced element superposed strength factor of the overall science and technology of setting is less than or equal to 0.3, and science and technology overall for each single item Advanced element, its settable value of terminal are 0.001 or other values, and cumulative in the advanced element for carrying out overall science and technology When, it adds up according to present count quantifier before being taken after advance sequence.The preset quantity can be 300,400 etc..
As an example, for n-th layer technical system, terminal determines that every layer of technical system is corresponding in multilayer technique system The operation for being divided into Dynamic gene can be with are as follows: obtain the corresponding Technical investment cost of each technology essential factor in n-th layer technical system Intensity factor, engineering technology input cost intensity factor and the advanced element superposed strength factor, N are just more than or equal to 2 Integer;By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor and advanced Property the element superposed strength factor be added, obtain in n-th layer technical system that each technology essential factor is corresponding to be divided into Dynamic gene.
For example, when including 4 layers of technical system, for second layer technical system, φⅡiⅡtiⅡyiⅡgi, φⅡi It is divided into Dynamic gene, φ for i-th of technology essential factor in second layer technical system is correspondingⅡtiIt is i-th in second layer technical system The corresponding Technical investment cost intensity factor of technology essential factor, φⅡyiIt is corresponding for i-th of technology essential factor in second layer technical system Engineering technology input cost intensity factor, φⅡgiFor the corresponding advanced element of i-th of technology essential factor in second layer technical system Class adds intensity factor.For third layer technical system, φⅢijⅢtijⅢyijⅢgij, φⅢijFor third layer technical system In j-th of technology essential factor is corresponding in i-th of technical system is divided into Dynamic gene, φⅢtijIt is i-th in third layer technical system The corresponding Technical investment cost intensity factor of j-th of technology essential factor, φ in technical systemⅢyijIt is in third layer technical system i-th The corresponding engineering technology input cost intensity factor of j-th of technology essential factor, φ in a technical systemⅢgijFor third layer technical system In the corresponding advanced element superposed strength factor of j-th of technology essential factor in i-th of technical system.For the 4th layer of technology body System, φⅣijⅣtijⅣyijⅣgij, φⅣijIt is wanted for j-th of technology in i-th of technical system in the 4th layer of technical system Element is corresponding to be divided into Dynamic gene, φⅣtijIt is corresponding for j-th of technology essential factor in i-th of technical system in the 4th layer of technical system Technical investment cost intensity factor, φⅣyijFor j-th of technology essential factor pair in i-th of technical system in the 4th layer of technical system The engineering technology input cost intensity factor answered, φⅣgijFor j-th of technology in i-th of technical system in the 4th layer of technical system The corresponding advanced element superposed strength factor of element.
Similarly, the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology are thrown in n-th layer technical system Enter cost intensity factor and the advanced element superposed strength factor can be Design Thinking of the terminal based on Management Accounting and effectively The technical and economic evaluation of investment, parameter extraction by each feature vector index be calculated.
It should be noted that when N is 2, the corresponding Technical investment cost of i-th of technology essential factor in second layer technical system Intensity factor can obtain i-th of Technical investment cost in second layer technical system divided by technical system input cost for terminal It arrives.The corresponding engineering technology input cost intensity factor of i-th of technology essential factor can be terminal by the in second layer technical system I-th of engineering technology input cost is obtained divided by i-th of Technical investment cost in two layers of technical system.When N is 3, third layer The corresponding Technical investment cost intensity factor of j-th of technology essential factor in technical system in i-th of technical system can be terminal J-th of technology essential factor input cost in third layer technical system is obtained divided by i-th of technical system input cost.Third layer skill The corresponding engineering technology input cost intensity factor of j-th of technology essential factor in art system in i-th of technical system can be for eventually End by third layer technical system in i-th of technical system engineering technology input cost divided by j-th of skill in i-th of technical system Art input cost obtains.Similarly, j-th of technology essential factor pair when N is 4, in the 4th layer of technical system in i-th of technical system The Technical investment cost intensity factor answered can for terminal by j-th of technology essential factor input cost in the 4th layer of technical system divided by I-th of technical system input cost obtains.J-th of technology essential factor in 4th layer of technical system in i-th of technical system is corresponding Engineering technology input cost intensity factor can be terminal by engineering technology in i-th of technical system in the 4th layer of technical system Input cost is obtained divided by j-th of Technical investment cost in i-th of technical system.
As an example, the corresponding advanced factor kind of i-th of technology essential factor adds intensity factor in n-th layer technical system For the corresponding advanced element accumulated value of i-th of technology essential factor in n-th layer technical system.Advanced element may include patent, Proprietary technology, tangibility technology, know-how, and obtain the technology etc. of the above progress prize in science and technology at the provincial and ministerial level.
It should also be noted that, the value of each corresponding advanced element of the technology essential factor of every layer of technical system can be prior Setting, and the corresponding value of advanced element of each technology essential factor can not be identical in the technical system of different levels, and determines In every layer of technical system when the corresponding advanced element accumulated value of each technology essential factor, each skill in the technical system of different levels The number of the advanced element of art element selection is not also identical.For example, each technology essential factor is corresponding in second layer technical system The value of each advance element can be 0.003, determine corresponding technology according to 100 before advanced sequencing selection advanced elements The advanced element accumulated value of element.In third layer technical system, the value of the corresponding each advanced element of each technology essential factor It can be 0.006, determine that the advanced element of corresponding technology essential factor is tired according to 50 before advanced sequencing selection advanced elements It is value added.In 4th layer of technical system, the value of the corresponding each advanced element of each technology essential factor can be 0.03, according to advanced Property sequencing selection before 10 advanced elements determine the advanced element accumulated values of corresponding technology essential factor.
In some embodiments, the value model that the corresponding technology essential factor of every layer of technical system is divided into rate can also be arranged in terminal It encloses, it is right if it is less than this when wherein the corresponding technology essential factor of one layer of technical system is divided into rate beyond corresponding value range value The corresponding technology essential factor of this layer of technical system is then divided into rate and is determined as the value range most by the minimum value for the value range answered Small value;If it is greater than the minimum value of corresponding value range, then the corresponding technology essential factor of this layer of technical system is divided into rate and determined For the maximum value of the value range.
It should be noted that be directed to the technical system of different levels, terminal is based on that every layer of technical system is corresponding is divided into tune Integral divisor determines that the corresponding operation for being divided into regulation coefficient of every layer of technical system is also different.
As an example, for first layer technical system, terminal can be divided into based on first layer technical system is corresponding Dynamic gene determines that first layer technical system is corresponding by following first formula and is divided into regulation coefficient.
It should be noted that in above-mentioned first formula (1), KIIt is divided into adjustment system for first layer technical system is corresponding Number, φIIt is divided into Dynamic gene for first layer technical system is corresponding, e is natural number.
It should be noted that terminal is based on, first layer technical system is corresponding to be divided into Dynamic gene, not only can be by upper It states the first formula (1) and determines that first layer technical system is corresponding and be divided into regulation coefficient, can also determine by other means, than Such as, it is divided into Dynamic gene based on first layer technical system is corresponding, determines first layer technical system by following 4th formula (4) It is corresponding to be divided into regulation coefficient.
It should be noted that KImFor technical application item base income intensity regulation coefficient, KItFor overall input in science and technology at This intensity regulation coefficient, KIyFor system engineering Technical investment cost intensity regulation coefficient, KIgIt is thrown for the advanced technology of overall science and technology Enter quantity intensity regulation coefficient.φImFor technical application item base income intensity factor, φItIt is strong for overall input in science and technology cost Spend the factor, φIyFor system engineering Technical investment cost intensity factor, φIgFor overall science and technology advanced element superposed strength because Son.Third formula and the 4th formula can be mutually converted by seeking logarithm.
As an example, for n-th layer technical system, terminal can be divided into tune based on n-th layer technical system is corresponding Integral divisor, determines this n-th layer technical system is corresponding and be divided into regulation coefficient by following second formula.
It should be noted that in above-mentioned second formula (2), KNiIt is corresponding for i-th of technology essential factor in n-th layer technical system Be divided into regulation coefficient, n is the number for the technology essential factor for including in n-th layer technical system, and i is any in n technology essential factor A technology essential factor, φNiIt is divided into Dynamic gene for i-th of technology essential factor in n-th layer technical system is corresponding, e is natural number.
It should also be noted that, be directed to n-th layer technical system, terminal is based on that n-th layer technical system is corresponding is divided into adjustment The factor not only can determine that n-th layer technical system is corresponding by above-mentioned second formula (2) and be divided into regulation coefficient, can be with base It is divided into Dynamic gene in n-th layer technical system is corresponding, determines that n-th layer technical system is corresponding by other means and be divided into adjustment Coefficient.For example, terminal can be based on, n-th layer technical system is corresponding to be divided into Dynamic gene, and being determined by following 5th formula should N-th layer technical system is corresponding to be divided into regulation coefficient.
In some embodiments, the basic function value of every layer of technical system is being divided into adjustment system multiplied by corresponding by terminal Before number, the basic function value in n-th layer technical system can also be determined.
As an example, for n-th layer technical system, by the multiple technology essential factors for including in n-th layer technical system point Not corresponding basic function value is added, and obtains the basic function value in n-th layer technical system.It that is to say, ANiFor the basic function value in n-th layer technical system, ANijFor j-th of skill in i-th of technical system in n-th layer technical system The basic function of art element is worth.
Hereinafter, illustrating how terminal is based on technology essential factor and is divided into rate, determine that the corresponding market prospective of every layer of technical system is total Value.
As an example, terminal is divided into rate based on technology essential factor, determines that the corresponding market prospective of every layer of technical system is total The operation of value can be with are as follows: is directed to first layer technical system, is divided into rate based on the corresponding technology essential factor of first layer technical system, leads to It crosses following third formula and determines the corresponding market prospective total value of first layer technical system;For n-th layer technical system, by N- The corresponding market prospective total value of 1 layer of technical system is divided into rate multiplied by the corresponding technology essential factor of n-th layer technical system, obtains N The corresponding market prospective total value of layer technical system, that is to say, QN=QN-1TN,QNFor the corresponding pre- forward market of n-th layer technical system Field total value, QN-1For the corresponding market prospective total value of N-1 layers of technical system, TNFor the corresponding technology of n-th layer technical system Element is divided into rate.
It should be noted that in above-mentioned third formula (3), QIFor the corresponding market prospective total price of first layer technical system Value, TzIt is divided into rate for the corresponding technology essential factor of first layer technical system, m is expected income years, and z is in the prospective earnings time limit Any year, QIzFor the market prospective value that first layer technical system is generated in z, r is discount rate.
Step 204: terminal prompts evaluation result.
Really know that the market value of objective appraisal object, terminal can show evaluation result for the ease of staff Show, for example, terminal can be prompted in such a way that voice plays evaluation result and/or display evaluation result.
As an example, terminal is after being evaluated to objective appraisal object and obtaining evaluation result, can also should The evaluation result of objective appraisal object is compared with the evaluation result of references object, which can be type and target The similar or identical oil gas operation unit of evaluation object.
It in the embodiment of the present application, can be according to the level knot of production total factor distribution principle and oil gas tangibility technology tree Objective appraisal object is layered by structure, obtains multilayer technique system, then determines that target is commented by the progressive model that is divided into of benefit The market value of valence object, to complete the evaluation to objective appraisal object.It, can be by objective appraisal due in the embodiment of the present application Object is layered according to production total factor distribution principle and the hierarchical structure of oil gas tangibility technology tree, and according to layering after Technical system is evaluated, and scientific and technological benefit is over-evaluated so as to improve existing petroleum S&T Benefit Evaluation Method, input in science and technology Underestimate, key special subjects project contribution extension, the generalization of technological value characteristic index, parameter extraction subjectivity, weight setting The typical problems such as one change, improve evaluation accuracy.
After the evaluation method to petroleum S&T benefit provided by the embodiments of the present application is explained, next, The evaluating apparatus of petroleum S&T benefit provided by the embodiments of the present application is introduced.
Fig. 4 is a kind of block diagram of the evaluating apparatus for petroleum S&T benefit that the embodiment of the present disclosure provides, referring to fig. 4, the dress Setting being implemented in combination with by software, hardware or both.The device includes: to obtain module 401, hierarchical block 402 and evaluation Module 403.
Module 401 is obtained, for obtaining objective appraisal object, the objective appraisal object is the oil for achieving economic benefit Gas operation unit;
Hierarchical block 402 will for the hierarchical structure according to production total factor distribution principle and oil gas tangibility technology tree The objective appraisal object is layered, and multilayer technique system is obtained;
Evaluation module 403, for by benefit it is progressive be divided into model to the production factors in the multi-level techniques system into The evaluation of row technology, the progressive model that is divided into of the benefit is for determining the market value of evaluation object.
In some embodiments, referring to Fig. 5, the evaluation module 403 includes:
First determines submodule 4031, and for determining, the corresponding technology of every layer of technical system is wanted in the multilayer technique system Element is divided into rate;
Second determines submodule 4032, for being divided into rate based on the technology essential factor, determines every layer of technical system pair The market prospective total value answered.
In some embodiments, described first determine that submodule 4031 is used for:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into Regulation coefficient;
The basic function of every layer of technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains every layer of skill The corresponding technology essential factor of art system is divided into rate.
In some embodiments, described first determine that submodule 4031 is also used to:
For first layer technical system, it is strong to obtain the corresponding technical application item base income of the first layer technical system Spend the advanced of the factor, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall science and technology The property element superposed strength factor;
By the corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology at The advanced element superposed strength factor phase of this intensity factor, system engineering Technical investment cost intensity factor and overall science and technology Add, obtains that the first layer technical system is corresponding to be divided into Dynamic gene;
For n-th layer technical system, obtain the corresponding Technical investment of each technology essential factor in the n-th layer technical system at This intensity factor, engineering technology input cost intensity factor and the advanced element superposed strength factor, the N be more than or equal to 2 positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor It is added with the advanced element superposed strength factor, obtains in the n-th layer technical system that each technology essential factor is corresponding to be divided into tune Integral divisor.
In some embodiments, described first determine that submodule 4031 is also used to:
For first layer technical system, it is divided into Dynamic gene based on the first layer technical system is corresponding, by following First formula determines that the first layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KIIt is divided into regulation coefficient, the φ for the first layer technical system is correspondingIFor the first layer Technical system is corresponding to be divided into Dynamic gene, and the e is natural number.
In some embodiments, described first determine that submodule 4031 is also used to:
For n-th layer technical system, it is divided into Dynamic gene based on the n-th layer technical system is corresponding, passes through following Two formula determine that the n-th layer technical system is corresponding and are divided into regulation coefficient;
Wherein, the KNiIt is divided into regulation coefficient, the n for i-th of technology essential factor in the n-th layer technical system is corresponding Number for the technology essential factor for including in the n-th layer technical system, the i are any one skill in the n technology essential factor Art element, the φNiIt is divided into Dynamic gene for i-th of technology essential factor in the n-th layer technical system is corresponding, the e is certainly So number.
In some embodiments, described second determine that submodule 4032 is used for:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of the first layer technical system, is led to It crosses following third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, the QIFor the corresponding market prospective total value of first layer technical system, the TzFor first layer technical system Corresponding technology essential factor is divided into rate, and the m is expected income years, and the z is any year in the prospective earnings time limit, The QIzFor the market prospective value that the first layer technical system is generated in z, the r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by described The corresponding technology essential factor of N layers of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
In conclusion in the embodiment of the present application, it can be according to production total factor distribution principle and oil gas tangibility technology Objective appraisal object is layered by the hierarchical structure of tree, obtains multilayer technique system, is then divided into model by the way that benefit is progressive The market value of objective appraisal object is determined, to complete the evaluation to objective appraisal object.It, can be with due in the embodiment of the present application Objective appraisal object is layered according to the hierarchical structure of production total factor distribution principle and oil gas tangibility technology tree, and is pressed It is evaluated according to the technical system after layering, so as to improve existing petroleum S&T Benefit Evaluation Method for scientific and technological high efficiency Estimate, input in science and technology is underestimated, key special subjects project contribution extension, the generalization of technological value characteristic index, parameter extraction subjectivity, The typical problems such as weight setting homogenization, improve evaluation accuracy.
It should be understood that the evaluating apparatus of petroleum S&T benefit provided by the above embodiment is carrying out petroleum S&T benefit Evaluation when, only the example of the division of the above functional modules, in practical application, can according to need and will be above-mentioned Function distribution is completed by different functional modules, i.e., the internal structure of device is divided into different functional modules, with complete with The all or part of function of upper description.In addition, the evaluating apparatus of petroleum S&T benefit provided by the above embodiment and oil gas section The evaluation method embodiment of skill benefit belongs to same design, and specific implementation process is detailed in embodiment of the method, and which is not described herein again.
Fig. 6 shows the structural block diagram of the terminal 600 of one exemplary embodiment of the application offer.The terminal 600 can be with Be: smart phone, tablet computer, MP3 player (Moving Picture Experts Group Audio Layer III, Dynamic image expert's compression standard audio level 3), MP4 (Moving Picture Experts Group Audio Layer IV, dynamic image expert's compression standard audio level 4) player, laptop or desktop computer.Terminal 600 be also possible to by Referred to as other titles such as user equipment, portable terminal, laptop terminal, terminal console.
In general, terminal 600 includes: processor 601 and memory 602.
Processor 601 may include one or more processing cores, such as 4 core processors, 8 core processors etc..Place Reason device 601 can use DSP (Digital Signal Processing, Digital Signal Processing), FPGA (Field- Programmable Gate Array, field programmable gate array), PLA (Programmable Logic Array, may be programmed Logic array) at least one of example, in hardware realize.Processor 601 also may include primary processor and coprocessor, master Processor is the processor for being handled data in the awake state, also referred to as CPU (Central Processing Unit, central processing unit);Coprocessor is the low power processor for being handled data in the standby state.In In some embodiments, processor 601 can be integrated with GPU (Graphics Processing Unit, image processor), GPU is used to be responsible for the rendering and drafting of content to be shown needed for display screen.In some embodiments, processor 601 can also be wrapped AI (Artificial Intelligence, artificial intelligence) processor is included, the AI processor is for handling related machine learning Calculating operation.
Memory 602 may include one or more computer readable storage mediums, which can To be non-transient.Memory 602 may also include high-speed random access memory and nonvolatile memory, such as one Or multiple disk storage equipments, flash memory device.In some embodiments, the non-transient computer in memory 602 can Storage medium is read for storing at least one instruction, at least one instruction performed by processor 601 for realizing this Shen Please in embodiment of the method provide petroleum S&T benefit evaluation method.
In some embodiments, terminal 600 is also optional includes: peripheral device interface 603 and at least one peripheral equipment. It can be connected by bus or signal wire between processor 601, memory 602 and peripheral device interface 603.Each peripheral equipment It can be connected by bus, signal wire or circuit board with peripheral device interface 603.Specifically, peripheral equipment includes: radio circuit 604, at least one of touch display screen 605, camera 606, voicefrequency circuit 607, positioning component 608 and power supply 609.
Peripheral device interface 603 can be used for I/O (Input/Output, input/output) is relevant outside at least one Peripheral equipment is connected to processor 601 and memory 602.In some embodiments, processor 601, memory 602 and peripheral equipment Interface 603 is integrated on same chip or circuit board;In some other embodiments, processor 601, memory 602 and outer Any one or two in peripheral equipment interface 603 can realize on individual chip or circuit board, the present embodiment to this not It is limited.
Radio circuit 604 is for receiving and emitting RF (Radio Frequency, radio frequency) signal, also referred to as electromagnetic signal.It penetrates Frequency circuit 604 is communicated by electromagnetic signal with communication network and other communication equipments.Radio circuit 604 turns electric signal It is changed to electromagnetic signal to be sent, alternatively, the electromagnetic signal received is converted to electric signal.Optionally, radio circuit 604 wraps It includes: antenna system, RF transceiver, one or more amplifiers, tuner, oscillator, digital signal processor, codec chip Group, user identity module card etc..Radio circuit 604 can be carried out by least one wireless communication protocol with other terminals Communication.The wireless communication protocol includes but is not limited to: Metropolitan Area Network (MAN), each third generation mobile communication network (2G, 3G, 4G and 5G), wireless office Domain net and/or WiFi (Wireless Fidelity, Wireless Fidelity) network.In some embodiments, radio circuit 604 may be used also To include the related circuit of NFC (Near Field Communication, wireless near field communication), the application is not subject to this It limits.
Display screen 605 is for showing UI (User Interface, user interface).The UI may include figure, text, figure Mark, video and its their any combination.When display screen 605 is touch display screen, display screen 605 also there is acquisition to show The ability of the touch signal on the surface or surface of screen 605.The touch signal can be used as control signal and be input to processor 601 are handled.At this point, display screen 605 can be also used for providing virtual push button and/or dummy keyboard, also referred to as soft button and/or Soft keyboard.In some embodiments, display screen 605 can be one, and the front panel of terminal 600 is arranged;In other embodiments In, display screen 605 can be at least two, be separately positioned on the different surfaces of terminal 600 or in foldover design;In still other reality It applies in example, display screen 605 can be flexible display screen, be arranged on the curved surface of terminal 600 or on fold plane.Even, it shows Display screen 605 can also be arranged to non-rectangle irregular figure, namely abnormity screen.Display screen 605 can use LCD (Liquid Crystal Display, liquid crystal display), OLED (Organic Light-Emitting Diode, Organic Light Emitting Diode) Etc. materials preparation.
CCD camera assembly 606 is for acquiring image or video.Optionally, CCD camera assembly 606 include front camera and Rear camera.In general, the front panel of terminal is arranged in front camera, the back side of terminal is arranged in rear camera.One In a little embodiments, rear camera at least two is main camera, depth of field camera, wide-angle camera, focal length camera shooting respectively Any one in head, to realize that main camera and the fusion of depth of field camera realize background blurring function, main camera and wide-angle Camera fusion realizes that pan-shot and VR (Virtual Reality, virtual reality) shooting function or other fusions are clapped Camera shooting function.In some embodiments, CCD camera assembly 606 can also include flash lamp.Flash lamp can be monochromatic warm flash lamp, It is also possible to double-colored temperature flash lamp.Double-colored temperature flash lamp refers to the combination of warm light flash lamp and cold light flash lamp, can be used for not With the light compensation under colour temperature.
Voicefrequency circuit 607 may include microphone and loudspeaker.Microphone is used to acquire the sound wave of user and environment, and will Sound wave, which is converted to electric signal and is input to processor 601, to be handled, or is input to radio circuit 604 to realize voice communication. For stereo acquisition or the purpose of noise reduction, microphone can be separately positioned on the different parts of terminal 600 to be multiple.Mike Wind can also be array microphone or omnidirectional's acquisition type microphone.Loudspeaker is then used to that processor 601 or radio circuit will to be come from 604 electric signal is converted to sound wave.Loudspeaker can be traditional wafer speaker, be also possible to piezoelectric ceramic loudspeaker.When When loudspeaker is piezoelectric ceramic loudspeaker, the audible sound wave of the mankind can be not only converted electrical signals to, it can also be by telecommunications Number the sound wave that the mankind do not hear is converted to carry out the purposes such as ranging.In some embodiments, voicefrequency circuit 607 can also include Earphone jack.
Positioning component 608 is used for the current geographic position of positioning terminal 600, to realize navigation or LBS (Location Based Service, location based service).Positioning component 608 can be the GPS (Global based on the U.S. Positioning System, global positioning system), the dipper system of China, Russia Gray receive this system or European Union The positioning component of Galileo system.
Power supply 609 is used to be powered for the various components in terminal 600.Power supply 609 can be alternating current, direct current, Disposable battery or rechargeable battery.When power supply 609 includes rechargeable battery, which can support wired charging Or wireless charging.The rechargeable battery can be also used for supporting fast charge technology.
In some embodiments, terminal 600 further includes having one or more sensors 610.The one or more sensors 610 include but is not limited to: acceleration transducer 611, gyro sensor 612, pressure sensor 613, fingerprint sensor 614, Optical sensor 615 and proximity sensor 616.
The acceleration that acceleration transducer 611 can detecte in three reference axis of the coordinate system established with terminal 600 is big It is small.For example, acceleration transducer 611 can be used for detecting component of the acceleration of gravity in three reference axis.Processor 601 can With the acceleration of gravity signal acquired according to acceleration transducer 611, touch display screen 605 is controlled with transverse views or longitudinal view Figure carries out the display of user interface.Acceleration transducer 611 can be also used for the acquisition of game or the exercise data of user.
Gyro sensor 612 can detecte body direction and the rotational angle of terminal 600, and gyro sensor 612 can To cooperate with acquisition user to act the 3D of terminal 600 with acceleration transducer 611.Processor 601 is according to gyro sensor 612 Following function may be implemented in the data of acquisition: when action induction (for example changing UI according to the tilt operation of user), shooting Image stabilization, game control and inertial navigation.
The lower layer of side frame and/or touch display screen 605 in terminal 600 can be set in pressure sensor 613.Work as pressure When the side frame of terminal 600 is arranged in sensor 613, user can detecte to the gripping signal of terminal 600, by processor 601 Right-hand man's identification or prompt operation are carried out according to the gripping signal that pressure sensor 613 acquires.When the setting of pressure sensor 613 exists When the lower layer of touch display screen 605, the pressure operation of touch display screen 605 is realized to UI circle according to user by processor 601 Operability control on face is controlled.Operability control includes button control, scroll bar control, icon control, menu At least one of control.
Fingerprint sensor 614 is used to acquire the fingerprint of user, collected according to fingerprint sensor 614 by processor 601 The identity of fingerprint recognition user, alternatively, by fingerprint sensor 614 according to the identity of collected fingerprint recognition user.It is identifying When the identity of user is trusted identity out, the user is authorized to execute relevant sensitive operation, the sensitive operation packet by processor 601 Include solution lock screen, check encryption information, downloading software, payment and change setting etc..Terminal can be set in fingerprint sensor 614 600 front, the back side or side.When being provided with physical button or manufacturer Logo in terminal 600, fingerprint sensor 614 can be with It is integrated with physical button or manufacturer Logo.
Optical sensor 615 is for acquiring ambient light intensity.In one embodiment, processor 601 can be according to optics The ambient light intensity that sensor 615 acquires controls the display brightness of touch display screen 605.Specifically, when ambient light intensity is higher When, the display brightness of touch display screen 605 is turned up;When ambient light intensity is lower, the display for turning down touch display screen 605 is bright Degree.In another embodiment, the ambient light intensity that processor 601 can also be acquired according to optical sensor 615, dynamic adjust The acquisition parameters of CCD camera assembly 606.
Proximity sensor 616, also referred to as range sensor are generally arranged at the front panel of terminal 600.Proximity sensor 616 For acquiring the distance between the front of user Yu terminal 600.In one embodiment, when proximity sensor 616 detects use When family and the distance between the front of terminal 600 gradually become smaller, touch display screen 605 is controlled from bright screen state by processor 601 It is switched to breath screen state;When proximity sensor 616 detects user and the distance between the front of terminal 600 becomes larger, Touch display screen 605 is controlled by processor 601 and is switched to bright screen state from breath screen state.
It that is to say, the embodiment of the present application provides not only a kind of terminal, including processor and can hold for storage processor The memory of row instruction, wherein processor is configured as executing the method in Fig. 1 and embodiment shown in Fig. 2, moreover, this Shen Please embodiment additionally provide a kind of computer readable storage medium, be stored with computer program in the storage medium, the computer The evaluation method of the petroleum S&T benefit in Fig. 1 and embodiment shown in Fig. 2 may be implemented when program is executed by processor.
It will be understood by those skilled in the art that the restriction of structure shown in Fig. 6 not structure paired terminal 600, can wrap It includes than illustrating more or fewer components, perhaps combine certain components or is arranged using different components.
Those of ordinary skill in the art will appreciate that realizing that all or part of the steps of above-described embodiment can pass through hardware It completes, relevant hardware can also be instructed to complete by program, the program can store in a kind of computer-readable In storage medium, storage medium mentioned above can be read-only memory, disk or CD etc..
The foregoing is merely the preferred embodiments of the application, not to limit the application, it is all in spirit herein and Within principle, any modification, equivalent replacement, improvement and so on be should be included within the scope of protection of this application.

Claims (15)

1. a kind of evaluation method of petroleum S&T benefit, which is characterized in that the described method includes:
Objective appraisal object is obtained, the objective appraisal object is the oil gas operation unit for achieving economic benefit;
According to the hierarchical structure of production total factor distribution principle and oil gas tangibility technology tree, the objective appraisal object is carried out Layering, obtains multilayer technique system;
By the progressive model that is divided into of benefit to the production factors progress technology evaluation in the multi-level techniques system, the benefit is passed Into being divided into model for determining the market value of evaluation object.
2. the method as described in claim 1, which is characterized in that it is described by the progressive model that is divided into of benefit to the multi-level techniques Production factors in system carry out technology evaluation, comprising:
Determine that the corresponding technology essential factor of every layer of technical system is divided into rate in the multilayer technique system;
It is divided into rate based on the technology essential factor, determines the corresponding market prospective total value of every layer of technical system.
3. method according to claim 2, which is characterized in that every layer of technical system in the determination multilayer technique system Corresponding technology essential factor is divided into rate, comprising:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into adjustment Coefficient;
The basic function of every layer of technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains every layer of technology body It is that corresponding technology essential factor is divided into rate.
4. method as claimed in claim 3, which is characterized in that every layer of technical system is corresponding in the determining multilayer technique system Be divided into Dynamic gene, comprising:
For first layer technical system, obtain the corresponding technical application item base income intensity of the first layer technical system because Son, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall scientific and technological advance are wanted The plain superposed strength factor;
The corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology cost is strong The degree factor, system engineering Technical investment cost intensity factor are added with the advanced element superposed strength factor of overall science and technology, are obtained It is divided into Dynamic gene to the first layer technical system is corresponding;
For n-th layer technical system, it is strong to obtain the corresponding Technical investment cost of each technology essential factor in the n-th layer technical system The factor, engineering technology input cost intensity factor and the advanced element superposed strength factor are spent, the N is more than or equal to 2 Positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor and elder generation Into the property element superposed strength factor be added, obtain each technology essential factor in the n-th layer technical system it is corresponding be divided into adjustment because Son.
5. the method as claimed in claim 3 or 4, which is characterized in that described to be divided into based on every layer of technical system is corresponding Dynamic gene determines that every layer of technical system is corresponding and is divided into regulation coefficient, comprising:
For first layer technical system, it is divided into Dynamic gene based on the first layer technical system is corresponding, passes through following first Formula determines that the first layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KIIt is divided into regulation coefficient for the first layer technical system is corresponding, the φ I is the first layer technology System is corresponding to be divided into Dynamic gene, and the e is natural number.
6. the method as claimed in claim 3 or 4, which is characterized in that described to be divided into based on every layer of technical system is corresponding Dynamic gene determines that every layer of technical system is corresponding and is divided into regulation coefficient, comprising:
For n-th layer technical system, it is divided into Dynamic gene based on the n-th layer technical system is corresponding, it is public passes through following second Formula determines that the n-th layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KNiIt is divided into regulation coefficient for i-th of technology essential factor in the n-th layer technical system is corresponding, the n is institute The number for the technology essential factor for including in n-th layer technical system is stated, the i is that any one technology in the n technology essential factor is wanted Element, the φNiIt is divided into Dynamic gene for i-th of technology essential factor in the n-th layer technical system is corresponding, the e is natural number.
7. method according to claim 2, which is characterized in that it is described that rate is divided into based on the technology essential factor, it determines described every The corresponding market prospective total value of layer technical system, comprising:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of the first layer technical system, under It states third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, the QIFor the corresponding market prospective total value of first layer technical system, the TzIt is corresponding for first layer technical system Technology essential factor be divided into rate, the m is expected income years, and the z is any year in the prospective earnings time limit, described QIzFor the market prospective value that the first layer technical system is generated in z, the r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by the n-th layer The corresponding technology essential factor of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
8. a kind of evaluating apparatus of petroleum S&T benefit, which is characterized in that described device includes:
Module is obtained, for obtaining objective appraisal object, the objective appraisal object is the oil gas operation for achieving economic benefit Unit;
Hierarchical block, for the hierarchical structure according to production total factor distribution principle and oil gas tangibility technology tree, by the mesh Mark evaluation object is layered, and multilayer technique system is obtained;
Evaluation module, for being divided into model by the way that benefit is progressive and commenting the production factors progress technology in the multi-level techniques system Valence, the progressive model that is divided into of the benefit is for determining the market value of evaluation object.
9. device as claimed in claim 8, which is characterized in that the evaluation module includes:
First determines submodule, and for determining, the corresponding technology essential factor of every layer of technical system is divided into the multilayer technique system Rate;
Second determines submodule, for being divided into rate based on the technology essential factor, determines the corresponding expection of every layer of technical system Total market value.
10. device as claimed in claim 9, which is characterized in that described first determines that submodule is used for:
It determines in multilayer technique system that every layer of technical system is corresponding and is divided into Dynamic gene;
It is divided into Dynamic gene based on every layer of technical system is corresponding, determines that every layer of technical system is corresponding and be divided into adjustment Coefficient;
The basic function of every layer of technical system is worth and is divided into regulation coefficient multiplied by corresponding, obtains every layer of technology body It is that corresponding technology essential factor is divided into rate.
11. device as claimed in claim 10, which is characterized in that described first determines that submodule is also used to:
For first layer technical system, obtain the corresponding technical application item base income intensity of the first layer technical system because Son, overall input in science and technology cost intensity factor, system engineering Technical investment cost intensity factor and overall scientific and technological advance are wanted The plain superposed strength factor;
The corresponding technical application item base income intensity factor of the first layer technical system, overall input in science and technology cost is strong The degree factor, system engineering Technical investment cost intensity factor are added with the advanced element superposed strength factor of overall science and technology, are obtained It is divided into Dynamic gene to the first layer technical system is corresponding;
For n-th layer technical system, it is strong to obtain the corresponding Technical investment cost of each technology essential factor in the n-th layer technical system The factor, engineering technology input cost intensity factor and the advanced element superposed strength factor are spent, the N is more than or equal to 2 Positive integer;
By the corresponding Technical investment cost intensity factor of each technology essential factor, engineering technology input cost intensity factor and elder generation Into the property element superposed strength factor be added, obtain each technology essential factor in the n-th layer technical system it is corresponding be divided into adjustment because Son.
12. device as described in claim 10 or 11, which is characterized in that described first determines that submodule is also used to:
For first layer technical system, it is divided into Dynamic gene based on the first layer technical system is corresponding, passes through following first Formula determines that the first layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KIIt is divided into regulation coefficient, the φ for the first layer technical system is correspondingIFor the first layer technology System is corresponding to be divided into Dynamic gene, and the e is natural number.
13. device as described in claim 10 or 11, which is characterized in that described first determines that submodule is also used to:
For n-th layer technical system, it is divided into Dynamic gene based on the n-th layer technical system is corresponding, it is public passes through following second Formula determines that the n-th layer technical system is corresponding and is divided into regulation coefficient;
Wherein, the KNiIt is divided into regulation coefficient for i-th of technology essential factor in the n-th layer technical system is corresponding, the n is institute The number for the technology essential factor for including in n-th layer technical system is stated, the i is that any one technology in the n technology essential factor is wanted Element, the φNiIt is divided into Dynamic gene for i-th of technology essential factor in the n-th layer technical system is corresponding, the e is natural number.
14. device as claimed in claim 9, which is characterized in that described second determines that submodule is used for:
For the first layer technical system, rate is divided into based on the corresponding technology essential factor of the first layer technical system, under It states third formula and determines the corresponding market prospective total value of the first layer technical system;
Wherein, the QIFor the corresponding market prospective total value of first layer technical system, the TzIt is corresponding for first layer technical system Technology essential factor be divided into rate, the m is expected income years, and the z is any year in the prospective earnings time limit, described QIzFor the market prospective value that the first layer technical system is generated in z, the r is discount rate;
For the n-th layer technical system, by the corresponding market prospective total value of N-1 layers of technical system multiplied by the n-th layer The corresponding technology essential factor of technical system is divided into rate, obtains the corresponding market prospective total value of the n-th layer technical system.
15. a kind of computer readable storage medium, which is characterized in that computer program is stored in the storage medium, it is described Any method in claim 1-7 is realized when computer program is executed by processor.
CN201910497546.5A 2019-06-10 2019-06-10 Evaluation method, device and the storage medium of petroleum S&T benefit Pending CN110414773A (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104252683A (en) * 2014-10-17 2014-12-31 重庆市科学技术研究院 Science and technology project investment and financing evaluation method
US20160154402A1 (en) * 2014-12-01 2016-06-02 Institute For Information Industry Production performance management device and production performance management method thereof
CN106997499A (en) * 2016-01-22 2017-08-01 陶冶 Technological value analysis calculation method and system

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104252683A (en) * 2014-10-17 2014-12-31 重庆市科学技术研究院 Science and technology project investment and financing evaluation method
US20160154402A1 (en) * 2014-12-01 2016-06-02 Institute For Information Industry Production performance management device and production performance management method thereof
CN106997499A (en) * 2016-01-22 2017-08-01 陶冶 Technological value analysis calculation method and system

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
傅诚德,刘振武主编: "《世界石油科技发展趋势与展望》", 30 September 1997, 北京:石油工业出版社 *
姜子昂等: "我国技术要素价格市场化定价方法研究——以油气技术为例", 《价格理论与实践》 *
辜穗等: "对加快推进油气技术价值化的思考", 《国际石油经济》 *

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